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This paper proposes a high-speed and low-power bootstrapped level converter for dual-supply systems. The proposed level converter adopts a voltage bootstrapping at the gate of pull-down transistors to achieve improved driving speed and reduced contention problem. Simulation results in a 0.13-um CMOS process indicated that the proposed level converter reduces the propagation delay up to 64% and the...
In this paper, a set of low-voltage bootstrapped CMOS drivers are presented to reduce power consumption and improve switching speed for driving a large capacitive load. The proposed drivers can reduce the power consumption by making bootstrap operations conditional to input statistics. They also improve switching speed by providing larger bootstrap voltages for the same amount of integrated bootstrap...
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